DocumentCode :
1541975
Title :
Copper composition dependence of the structure and microwave properties in Y-Ba-Cu-O films
Author :
Yoshitake, T. ; Hattori, W. ; Tahara, S.
Author_Institution :
Fundamental Res. Labs., NEC Corp., Tsukuba, Japan
Volume :
9
Issue :
2
fYear :
1999
fDate :
6/1/1999 12:00:00 AM
Firstpage :
3058
Lastpage :
3061
Abstract :
The correlation between the copper composition and the microwave properties of YBa/sub 2/Cu/sub 3/O/sub x/ (YBCO) films is studied using coplanar waveguide resonators at 5 GHz. The c-axis lattice constant increases and the axial ratio b/a-the degree of orthorhombicity-decreases as the copper composition of the YBCO films decreases. The microwave properties of these films correlate well with these structural changes. The films with copper-rich composition have a low surface resistance R/sub s/ of 60 /spl mu//spl Omega/ at 50 K and a short magnetic penetration depth /spl lambda//sub L/(0) of 200 nm. The values of these quantities increase with decreasing copper composition. The films with less copper also show a gradual decrease in R/sub s/ below T/sub c,zero/, which is different from the tendency expected from the two-fluid model. These unusual microwave properties can be explained by the inhomogeneous superconductor model in which the regions with locally lowered T/sub c/ are distributed in the YBCO phase. The copper deficiencies that occurred in the films with less copper composition cause these inhomogeneities and thus they are an important cause of high R/sub s/ values of these YBCO films.
Keywords :
barium compounds; high-temperature superconductors; lattice constants; penetration depth (superconductivity); superconducting thin films; yttrium compounds; 5 GHz; YBa/sub 2/Cu/sub 3/O; YBa/sub 2/Cu/sub 3/O/sub x/ thin film; coplanar waveguide resonator; copper composition; inhomogeneous superconductor; lattice constant; magnetic penetration depth; microwave properties; orthorhombicity; structure; surface resistance; two-fluid model; Coplanar waveguides; Grain boundaries; High temperature superconductors; Lattices; Magnetic films; Plasma temperature; Superconducting films; Superconducting microwave devices; Surface resistance; Yttrium barium copper oxide;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/77.783674
Filename :
783674
Link To Document :
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